Active Distribution Networks Equivalencing for Dynamic Studies Using Measurements

B. Zaker, E. Farjah, G. Gharehpetian
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Abstract

In order to analyze power system dynamics in presence of microgrids and active distribution networks, it is essential to use accurate models of them in software packages. Since microgrids and active distribution networks include different types of distributed generations with complex detailed models, this will lead to high computation burden for this kind of studies. Therefore, it has been proposed to use precise equivalent models instead of detailed models. In this paper, a new method is proposed to obtain the dynamic equivalent model of active distribution networks using measurement data of disturbances. These disturbances include three phase short circuit which may occurred in the upstream power system. The proposed method uses measurement data of point of common coupling to simultaneously estimate the parameters of the equivalent generation unit and its controller. To show the effectiveness of the proposed method, it is applied to IEEE 9-Bus and 33-Bus systems as upstream and distribution systems, respectively.
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动态研究中的主动配电网等效测量
为了分析存在微电网和有源配电网的电力系统动力学,必须在软件包中使用精确的模型。由于微电网和有功配电网包含不同类型的分布式代,且详细模型复杂,这将导致此类研究的计算负担很大。因此,有人提出用精确等效模型代替详细模型。本文提出了一种利用实测扰动数据获得有功配电网动态等效模型的新方法。这些扰动包括上游电力系统中可能发生的三相短路。该方法利用共耦合点的测量数据,同时估计等效发电机组及其控制器的参数。为了证明该方法的有效性,将该方法分别应用于IEEE 9-Bus和33-Bus系统作为上游和配电系统。
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